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巴拿马天然产物的 cheminformatic 特征描述。

Cheminformatic characterization of natural products from Panama.

机构信息

CIFLORPAN, Center for Pharmacognostic Research on Panamanian Flora, College of Pharmacy, University of Panama, Campus Universitario Octavio Méndez Pereira, Avenida Octavio Méndez Pereira, P.O. Box 0824-00172, Panama City, Republic of Panama.

Departamento de Farmacia, Facultad de Química, Universidad Nacional Autónoma de México, Avenida Universidad 3000, 04510, Mexico City, Mexico.

出版信息

Mol Divers. 2017 Nov;21(4):779-789. doi: 10.1007/s11030-017-9781-4. Epub 2017 Aug 22.

Abstract

In this work, we discuss the characterization and diversity analysis of 354 natural products (NPs) from Panama, systematically analyzed for the first time. The in-house database was compared to NPs from Brazil, compounds from Traditional Chinese Medicine, natural and semisynthetic collections used in high-throughput screening, and compounds from ChEMBL. An analysis of the "global diversity" was conducted using molecular properties of pharmaceutical interest, three molecular fingerprints of different design, molecular scaffolds, and molecular complexity. The global diversity was visualized using consensus diversity plots that revealed that the secondary metabolites in the Panamanian flora have a large scaffold diversity as compared to other composite databases and also have several unique scaffolds. The large scaffold diversity is in agreement with the broad range of biological activities that this collection of NPs from Panama has shown. This study also provided further quantitative evidence of the large structural complexity of NPs. The results obtained in this study support that NPs from Panama are promising candidates to identify selective molecules and are suitable sources of compounds for virtual screening campaigns.

摘要

在这项工作中,我们讨论了来自巴拿马的 354 种天然产物(NPs)的特征描述和多样性分析,这是这些 NPs 首次被系统地分析。内部数据库与来自巴西的 NPs、中药化合物、高通量筛选中使用的天然和半合成化合物集以及来自 ChEMBL 的化合物进行了比较。利用具有药物应用价值的分子特性、三种不同设计的分子指纹、分子支架和分子复杂性对“全球多样性”进行了分析。使用共识多样性图对全球多样性进行了可视化,结果表明,与其他复合数据库相比,巴拿马植物中的次生代谢物具有很大的支架多样性,并且还具有几个独特的支架。这种大的支架多样性与该巴拿马 NPs 集所表现出的广泛的生物活性一致。这项研究还进一步提供了 NPs 结构复杂性较大的定量证据。这项研究的结果表明,巴拿马的 NPs 是识别选择性分子的有前途的候选物,也是用于虚拟筛选活动的化合物的合适来源。

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